Welsch Ralph, Manthe Uwe
Theoretische Chemie, Fakultät für Chemie, Universität Bielefeld, Universitätsstr. 25, D-33615 Bielefeld, Germany.
J Chem Phys. 2014 Nov 7;141(17):174313. doi: 10.1063/1.4900735.
Full-dimensional calculations of initial state-selected reaction probabilities on an accurate ab initio potential energy surface (PES) have been communicated recently [R. Welsch and U. Manthe, J. Chem. Phys. 141, 051102 (2014)]. These calculations use the quantum transition state concept, the multi-layer multi-configurational time-dependent Hartree approach, and graphics processing units to speed up the potential evaluation. Here further results of these calculations and an extended analysis are presented. State-selected reaction probabilities are given for many initial ro-vibrational states. The role of the vibrational states of the activated complex is analyzed in detail. It is found that rotationally cold methane mainly reacts via the ground state of the activated complex while rotationally excited methane mostly reacts via H-H-CH3-bending excited states of the activated complex. Analyzing the different contributions to the reactivity of the vibrationally states of methane, a complex pattern is found. Comparison with initial state-selected reaction probabilities computed on the semi-empirical Jordan-Gilbert PES reveals the dependence of the results on the specific PES.
最近已经报道了在精确的从头算势能面(PES)上对初始态选择反应概率进行的全维计算[R. 韦尔施和U. 曼特,《化学物理杂志》141, 051102 (2014)]。这些计算使用了量子过渡态概念、多层多组态含时哈特里方法以及图形处理单元来加速势能评估。这里给出了这些计算的进一步结果以及扩展分析。给出了许多初始转动 - 振动状态下的态选择反应概率。详细分析了活化络合物振动状态的作用。发现转动冷的甲烷主要通过活化络合物的基态反应,而转动激发的甲烷大多通过活化络合物的H - H - CH₃弯曲激发态反应。分析甲烷振动状态对反应性的不同贡献时,发现了一个复杂的模式。与在半经验乔丹 - 吉尔伯特PES上计算的初始态选择反应概率进行比较,揭示了结果对特定PES的依赖性。